| Literature DB >> 26944999 |
Lidia Montero1, Elena Ibáñez2, Mariateresa Russo3, Rosa di Sanzo3, Luca Rastrelli4, Anna Lisa Piccinelli4, Rita Celano4, Alejandro Cifuentes2, Miguel Herrero5.
Abstract
Profiling of the main metabolites from several licorice (Glycyrrhiza glabra) samples collected at different locations is carried out in this work by using comprehensive two-dimensional liquid chromatography (LC × LC) coupled to diode array (DAD) and mass spectrometry (MS) detectors. The optimized method was based on the application of a HILIC-based separation in the first dimension combined with fast RP-based second dimension separation. This set-up was shown to possess powerful separation capabilities allowing separating as much as 89 different metabolites in a single sample. Identification and grouping of metabolites according to their chemical class were achieved using the DAD, MS and MS/MS data. Triterpene saponins were the most abundant metabolites followed by glycosylated flavanones and chalcones, whereas glycyrrhizic acid, as expected, was confirmed as the main component in all the studied samples. LC × LC-DAD-MS/MS was able to resolve these complex licorice samples providing with specific metabolite profiles to the different licorice samples depending on their geographical origin. Namely, from 19 to 50 specific compounds were exclusively determined in the 2D-chromatograms from the different licorice samples depending on their geographical origin, which can be used as a typical pattern that could potentially be related to their geographical location and authentication.Entities:
Keywords: Authentication; LC × LC; Licorice; Metabolite; Phenolic compounds; Triterpene saponins
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Year: 2016 PMID: 26944999 DOI: 10.1016/j.aca.2016.01.040
Source DB: PubMed Journal: Anal Chim Acta ISSN: 0003-2670 Impact factor: 6.558